Rufai, AyorindeCrawshaw, John2019-02-142019-02-142018-09-079788490486887https://riunet.upv.es/handle/10251/116738[EN] We carried out drying studies on a 2.5D micromodel based on a thin section of a carbonate rock to investigate the impact of wettability on the capillary disconnect, the moment when liquid films de-pin from the external evaporating surface. While this is coincident with the transition to low evaporation rate (diffusion limited) for deionized-water, our experiments show, the corner wetting films persisted after the transition to low evaporation rate for both water-wet and mixed-wet micromodels for brine, as solid salt continued to build up at the external evaporating surface. Fully oil wet micromodels showed a drying rate transition coincident with de-pinning.8Reconocimiento - No comercial - Sin obra derivada (by-nc-nd)DryingDehydrationDewateringEmerging technologiesProducts qualityProcess controlEnvironmentalEvaporationSublimationDiffusionEnergyIntensificationCapillaryLiquid filmsMicromodelWettabilityCrystalizationCapillary disconnect during drying in model porous media at different wettabilityCapĂtulo de libro10.4995/IDS2018.2018.7313Abierto